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Multi-Switching Combination Anti-synchronization of Unknown Hyperchaotic Systems

机译:未知超混沌系统的多切换组合反同步

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The security of the information signal in digital communication systems is an active research problem. This paper proposes a new robust adaptive anti-synchronization control (RAASC) technique and studies the multi-switching combination anti-synchronization (MSCAS) of different unknown hyperchaotic (UH) systems. This controller reduces the overshoots in the transient phase and establishes the anti-synchronization convergence quickly. The proposedMSCASscheme anti-synchronizes two master UH systems with a slave UH system using the multi-switching mechanism that increases the complexity and enhances the security of the information signal in digital communications. The Lyapunov direct method assures the robust stability of the closed-loop dynamical system. This work provides adaptive laws that estimate the true values of unknown parameters. A numerical example of three different hyperchaotic Pang, Lu and Lorenz-Stenflo systems is simulated. The simulation results verify the theoretical findings. The proposed MSCAS approach is used for the secret communication of digital messages using the chaotic masking technique. The receiver retrieves the information signal with high security and good precession qualitatively, under the effect of different types of disturbances. This paper also discusses the implications of controller constituents of the proposed RAASC algorithm that establishes fast convergence. The article suggests some future research problems related to this work.
机译:数字通信系统中信息信号的安全性是一个积极的研究问题。本文提出了一种新的鲁棒自适应防同步控制(RAASC)技术,研究了不同未知超混沌(UH)系统的多开关组合反同步(MSCAS)。该控制器减少了瞬态阶段的过冲,快速建立了反同步融合。 ProposedMSCASSCHEME使用多开关机制反同步两个主UH系统,该机构使用多切换机制来提高复杂性并增强数字通信中信息信号的安全性。 Lyapunov Direct方法确保闭环动态系统的稳健稳定性。这项工作提供了自适应法律,估计未知参数的真实值。模拟了三种不同的超色庞,LU和LORENZ-STENFLO系统的数值例子。仿真结果验证了理论发现。所提出的MSCAS方法用于使用混沌掩蔽技术的数字消息的秘密通信。在不同类型的干扰的效果下,接收器定性地检索具有高安全性和优质的信息信号。本文还讨论了建立快速收敛的提议Raag算法的控制器成分对控制器成分的影响。本文介绍了与这项工作有关的未来研究问题。

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